Ikemoto N, Nelson R W
J Biol Chem. 1984 Oct 10;259(19):11790-7.
The phosphorylated intermediate of the sarcoplasmic reticulum Ca2+ ATPase (EP) was formed from [gamma-32P] ATP, and its decomposition was monitored by chasing with either ethylene glycol bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid (EGTA) or an excess amount of [gamma-31P]ATP. Chasing in the initial phase of E32P formation leads to monophasic and rapid decomposition, whereas chasing after the maximal level of E32P has been reached leads to biphasic decomposition. If a portion of EPtotal is formed from [gamma-31P]ATP (E31P) and the rest from [gamma-32P]ATP (E32P), decomposition of the later portion (E32P) is roughly monophasic and the rate of decomposition is about the same as that of the slow phase of the biphasic decomposition. Initiation of the EP reaction by concurrent addition of [gamma-32P]ATP and EGTA, conditions that permit the selective monitoring of the EP reaction via one of the subunits of the putative dimer (Ikemoto, N., Garcia, A. M., Kurobe, Y., and Scott, T. L. (1981) J. Biol. Chem. 256, 8593-8601) leads to monophasic decomposition at a rate comparable with the fast phase of biphasic decomposition. The kinetics of biphasic EP decomposition is reversibly affected by the nonionic detergent ethylene glycol monoether and the cleavable cross-linker dithiobissuccinimidyl propionate, both of which presumably affect subunit-subunit interactions. The results suggest that the biphasic EP decomposition is due to sequential liberation of Pi from different subunits (EI and EII) forming an oligomer as shown in the following model.
肌浆网Ca2+ATP酶(EP)的磷酸化中间体由[γ-32P]ATP形成,通过用乙二醇双(β-氨基乙醚)-N,N,N',N'-四乙酸(EGTA)或过量的[γ-31P]ATP进行追踪来监测其分解。在E32P形成的初始阶段进行追踪会导致单相快速分解,而在达到E32P的最大水平后进行追踪会导致双相分解。如果一部分EPtotal由[γ-31P]ATP(E31P)形成,其余部分由[γ-32P]ATP(E32P)形成,则后一部分(E32P)的分解大致为单相,分解速率与双相分解的慢相大致相同。通过同时添加[γ-32P]ATP和EGTA启动EP反应,这是一种允许通过假定二聚体的一个亚基选择性监测EP反应的条件(池本,N.,加西亚,A.M.,黑部,Y.,和斯科特,T.L.(1981)J.生物化学.256,8593 - 8601),会导致单相分解,其速率与双相分解的快相相当。双相EP分解的动力学受到非离子洗涤剂乙二醇单醚和可裂解交联剂二硫代双琥珀酰亚胺丙酸酯的可逆影响,这两种物质大概都会影响亚基 - 亚基相互作用。结果表明,双相EP分解是由于Pi从不同亚基(EI和EII)顺序释放,形成了如下模型所示的寡聚体。